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Altered Hemodynamics in the Embryonic Heart Affects Outflow Valve Development

机译:胚胎心脏的血流动力学改变影响流出瓣膜的发育

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Cardiac valve structure and function are primarily determined during early development. Consequently, abnormally-formed heart valves are the most common type of congenital heart defects. Several adult valve diseases can be backtracked to abnormal valve development, making it imperative to completely understand the process and regulation of heart valve development. Epithelial-to-mesenchymal transition (EMT) plays an important role in the development of heart valves. Though hemodynamics is vital to valve development, its role in regulating EMT is still unknown. In this study, intracardiac hemodynamics were altered by constricting the outflow tract (OFT)/ventricle junction (OVJ) of HH16–17 (Hamilton and Hamburger (HH) Stage 16–17) chicken embryos, ex ovo for 24 h. The constriction created an increase in peak and time-averaged centerline velocity along the OFT without changes to volumetric flow or heart rate. Computational fluid dynamics was used to estimate the level of increased spatially-averaged wall shear stresses on the OFT cushion from AMIRA reconstructions. OFT constriction led to a significant decrease in OFT cushion volume and the number of invaded mesenchyme in the OFT cushion. qPCR analysis revealed altered mRNA expression of a representative panel of genes, vital to valve development, in the OFT cushions from banded hearts. This study indicates the importance of hemodynamics in valve development.
机译:心脏瓣膜的结构和功能主要是在早期开发过程中确定的。因此,异常形成的心脏瓣膜是先天性心脏缺陷的最常见类型。几种成人瓣膜疾病可以追溯到异常的瓣膜发育,因此必须完全了解心脏瓣膜发育的过程和调节。上皮-间质转化(EMT)在心脏瓣膜的发展中起着重要作用。尽管血液动力学对瓣膜的发育至关重要,但其在EMT调节中的作用仍然未知。在这项研究中,心脏内血液动力学通过改变HH16-17(汉密尔顿和汉堡(HH)16-17阶段)鸡胚的流出通道(OFT)/心室连接(OVJ)24小时而改变。收缩导致沿OFT的峰值和时间平均中心线速度增加,而体积流量或心率没有变化。计算流体动力学被用来估计AMIRA重建在OFT垫层上增加的空间平均壁面剪应力水平。 OFT收缩导致OFT坐垫体积显着减少,并且OFT坐垫中侵入的间充质数量减少。 qPCR分析显示,在带状心脏的OFT垫子中,对瓣膜发育至关重要的一组代表性基因的mRNA表达发生了变化。这项研究表明血液动力学在瓣膜发育中的重要性。

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